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153 lines
5.4 KiB
153 lines
5.4 KiB
## Entity Best Practices & Conventions
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### Entities
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Every aggregate root is also an entity. So, these rules are valid for aggregate roots too unless aggregate root rules override them.
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- **Do** define entities in the **domain layer**.
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#### Primary Constructor
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* **Do** define a **primary constructor** that ensures the validity of the entity on creation. Primary constructors are used to create a new instance of the entity by the application code.
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- **Do** define primary constructor as `public`, `internal` or `protected internal` based on the requirements. If it's not public, the entity is expected to be created by a domain service.
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- **Do** always initialize sub collections in the primary constructor.
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- **Do not** generate `Guid` keys inside the constructor. Get it as a parameter, so the calling code will use `IGuidGenerator` to generate a new `Guid` value.
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#### Parameterless Constructor
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- **Do** always define a `protected` parameterless constructor to be compatible with ORMs.
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#### References
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- **Do** always **reference** to other aggregate roots **by Id**. Never add navigation properties to other aggregate roots.
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#### Other Class Members
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- **Do** always define properties and methods as `virtual` (except `private` methods, obviously). Because some ORMs and dynamic proxy tools require it.
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- **Do** keep the entity as always **valid** and **consistent** within its own boundary.
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- **Do** define properties with `private`, `protected`, `internal ` or `protected internal` setter where it is needed to protect the entity consistency and validity.
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- **Do** define `public `, `internal` or `protected internal` (virtual) **methods** to change the properties (with non-public setters) if necessary.
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### Aggregate Roots
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#### Primary Keys
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* **Do** always use a **Id** property for the aggregate root key.
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* **Do not** use **composite keys** for aggregate roots.
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* **Do** use **Guid** as the **primary key** of all aggregate roots.
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#### Base Class
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* **Do** inherit from the `AggregateRoot<TKey>` or one of the audited classes (`CreationAuditedAggregateRoot<TKey>`, `AuditedAggregateRoot<TKey>` or `FullAuditedAggregateRoot<TKey>`) based on requirements.
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#### Aggregate Boundary
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* **Do** keep aggregates **as small as possible**. Most of the aggregates will only have primitive properties and will not have sub collections. Consider these as design decisions:
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* **Performance** & **memory** cost of loading & saving aggregates (keep in mind that an aggregate is normally loaded & saved as a single unit). Larger aggregates will consume more CPU & memory.
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* **Consistency** & **validity** boundary.
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### Example
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#### Aggregate Root
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````C#
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public class Issue : FullAuditedAggregateRoot<Guid> //Using Guid as the key/identifier
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{
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public virtual string Title { get; private set; } //Changed using the SetTitle() method
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public virtual string Text { get; set; } //Can be directly changed. null values are allowed
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public virtual Guid? MilestoneId { get; set; } //Reference to another aggregate root
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public virtual bool IsClosed { get; private set; }
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public virtual IssueCloseReason? CloseReason { get; private set; } //Just an enum type
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public virtual Collection<IssueLabel> Labels { get; protected set; } //Sub collection
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protected Issue()
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{
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/* This constructor is for ORMs to be used while getting the entity from database.
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* - No need to initialize the Labels collection
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since it will be overrided from the database.
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- It's protected since proxying and deserialization tools
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may not work with private constructors.
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*/
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}
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//Primary constructor
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public Issue(
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Guid id, //Get Guid value from the calling code
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[NotNull] string title, //Indicate that the title can not be null.
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string text = null,
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Guid? milestoneId = null) //Optional argument
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{
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Id = id;
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Title = Check.NotNullOrWhiteSpace(title, nameof(title)); //Validate
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Text = text;
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MilestoneId = milestoneId;
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Labels = new Collection<IssueLabel>(); //Always initialize the collection
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}
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public virtual void SetTitle([NotNull] string title)
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{
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Title = Check.NotNullOrWhiteSpace(title, nameof(title)); //Validate
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}
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/* AddLabel & RemoveLabel methods manages the Labels collection
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* in a safe way (prevents adding the same label twice) */
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public virtual void AddLabel(Guid labelId)
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{
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if (Labels.Any(l => l.LabelId == labelId))
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{
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return;
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}
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Labels.Add(new IssueLabel(Id, labelId));
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}
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public virtual void RemoveLabel(Guid labelId)
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{
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Labels.RemoveAll(l => l.LabelId == labelId);
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}
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/* Close & ReOpen methods protect the consistency
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* of the IsClosed and the CloseReason properties. */
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public virtual void Close(IssueCloseReason reason)
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{
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IsClosed = true;
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CloseReason = reason;
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}
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public virtual void ReOpen()
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{
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IsClosed = false;
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CloseReason = null;
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}
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}
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````
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#### The Entity
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````C#
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public class IssueLabel : Entity
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{
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public virtual Guid IssueId { get; private set; }
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public virtual Guid LabelId { get; private set; }
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protected IssueLabel()
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{
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}
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public IssueLabel(Guid issueId, Guid labelId)
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{
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IssueId = issueId;
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LabelId = labelId;
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}
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}
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````
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### References
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* Effective Aggregate Design by Vaughn Vernon
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http://dddcommunity.org/library/vernon_2011 |